Answer:
Protron
Explanation:
Every proton has a positive charge, every electron has no charge, and every neutron has no charge. There is no such thing as a positron. I hope i help! :)
It allows the plant to stand upright.
Plants are heterotrophs, and animals are autotrophs.
Both plants and animals are autotrophs.
Both plants and animals are heterotrophs.
Answer:
plants are autotrophs, and animals are heterotrophs
Explanation:
autotroph produces their own food while heterotrophs depends on something.
Answer:
A. Plants are autotrophs, and animals are heterotrophs. Explanation:
Answer:
True
Explanation:
Because the genetic code is universal and the DNA molecule is the same for all living organisms, an organism can be genetically modified by introducing a gene from a different organism (called a transgene).
An example of this are Bt crops. Scientists isolated from a bacteria (Bacillus thuringiensis, Bt) a gene that produces a toxic protein that kills insects. Then, they modified crops such as cotton and corn by inserting this gene, and plants that express it can resist being eaten by insects (because when insects try to eat them they die due to the toxin).
B. predict the traits of the offspring of genetic crosses.
C. determine which species should be used in genetic crosses.
D. determine the actual outcomes of genetic crosses.
Answer:
Option B, predict the traits of the offspring of genetic crosses
Explanation:
Lets see an example -
Suppose there are two adult cats , where female cat has brown (BB)haired and it is a dominant trait while male cat is recessive grey (bb) haired organism.
If a cross is carried out between these two species then through probability it can be derived that how many species will be grey (Bb) haired
Let see the punnet square for the cross-
B B
b Bb Bb
b Bb Bb
Thus out of four offspring’s produced all the offspring’s are grey (Bb) colored. Thus, there is a 100% probability that if a cross is carried out between female cat having brown hair (BB) and a male cat having black hair (bb), the offsprings will have grey (Bb) hair.
In this way probability can help to predict the traits of the offspring of genetic crosses
The laws of probability can be applied to genetics to make predictions about the traits of the offspring that result from genetic crossings. Therefore, the correct option is B.
Probability enables us to calculate the likelihood that specific characteristics will be inherited, based on the known genetic information of the parent organism. Scientists can predict the possible combinations of genetic characteristics in offspring by understanding the principles of heredity and applying probability calculations.
Probability can forecast and infer, but it cannot predict the actual results of genetic crosses because these are affected by various processes, including random segregation during meiosis and genetic recombination.
Therefore, the correct option is B.
Learn more about Probability, here:
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b. Gate
c. Nucleus
d. Membrane